Medical Radiation Detection, Monitoring & Safety Market by Product [Personal Dosimeters], Safety Product, Detector, End User- Global Forecast to 2031
The value of the global medical radiation detection, monitoring, and safety market, estimated at around USD 1.47 billion in 2026, is expected to reach USD 2.22 billion in 2031, growing at a CAGR of... もっと見る
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SummaryThe value of the global medical radiation detection, monitoring, and safety market, estimated at around USD 1.47 billion in 2026, is expected to reach USD 2.22 billion in 2031, growing at a CAGR of 8.6%. Advances in PET-CT and MRI technologies, characterized by increased functionality, have expanded their use beyond traditional diagnostic purposes to include treatment planning and real-time monitoring during interventions. As a result, there is a growing demand for radiation detection and monitoring devices that can accurately assess the evolving applications of these technologies across various medical fields. The continued development of hybrid imaging modalities, such as PET-CT, facilitates the combination of functional and anatomical imaging. These advanced imaging techniques are increasingly used for sophisticated diagnosis and treatment planning in oncology, cardiology, and neurology. Consequently, the need for effective radiation detection and safety measures has become a priority."The personal dosimeters segment is expected to register the highest CAGR of the medical radiation detection, monitoring, and safety market during the forecast period." By product, the medical radiation detection, monitoring, and safety market is divided into several segments: personal dosimeters, area process monitors, environmental radiation monitors, surface contamination monitors, radioactive material monitors, and other radiation detection & monitoring products. Many countries have safety regulations that require the use of personal dosimeters for workers in environments where they may be exposed to radiation. As a result, there is a high demand for personal dosimeters in healthcare institutions. The development of electronic or intelligent dosimeters, which offer real-time monitoring, enhances the functionality and appeal of these technologies. These advanced dosimeters provide more accurate and timely data on radiation exposure, further promoting their adoption in various settings. "The full-body protection segment accounted for the largest share of the medical radiation detection, monitoring, and safety market in 2025." The medical radiation detection, monitoring, and safety market is categorized into four types of safety products: full-body protection, face protection, hand safety, and other medical radiation safety products. The growing healthcare infrastructure in emerging markets is driving the demand for radiation protection products. As more diagnostic centers and hospitals open, there is a corresponding need for protective gear to ensure the safety of employees who work with radiation. Additionally, the expansion of interventional radiology procedures, which typically involve higher-than-average radiation exposure, increases the demand for effective protective equipment. Full-body aprons are essential for protecting professionals during these procedures. "The hospitals segment is projected to witness the highest growth rate in the medical radiation detection, monitoring, and safety market, by end user, during the forecast period." The market for medical radiation detection, monitoring, and safety is divided by end user into two categories: hospitals and non-hospitals. The growth and improvement of hospital infrastructure in many countries, including the establishment of new hospitals and the renovation of existing ones, drive the demand for advanced medical radiation systems. Additionally, new facilities are equipped with state-of-the-art imaging technologies and radiation therapy systems. Government initiatives and funding aimed at upgrading healthcare infrastructure and enhancing access to advanced medical care play a significant role in this process. These initiatives often include subsidies, grants, and other incentives designed to help improve medical facilities and encourage investment in medical radiation equipment. "The Asia Pacific region is projected to witness the highest growth rate in the medical radiation detection, monitoring, and safety market during the forecast period." The global market for medical radiation detection, monitoring, and safety is divided into six regions: North America, Europe, Latin America, Asia Pacific, the Middle East and Africa, and the GCC Countries. The Asia Pacific region is expected to experience the highest growth rate in the medical radiation detection, monitoring, and safety market during the forecast period, driven by emerging economies such as Japan, India, and China. This region presents significant growth opportunities for market players and is projected to achieve the highest CAGR during the forecast period. Key factors contributing to the growth of the medical radiation detection, monitoring, and safety market in the Asia Pacific include government initiatives aimed at raising awareness about early disease diagnosis and the importance of regular health check-ups. Additionally, rising healthcare expenditures, an increasing number of hospitals and clinical diagnostic laboratories, and growing public awareness of radiation exposure are all significant drivers of market expansion in this region. The break-up of profiles of primary participants in the medical radiation detection, monitoring, and safety market: ・By Company Type: Tier 1 (26%), Tier 2 (44%), and Tier (30%) ・By Designation: C-level Executives (30%), Directors (34%), and Others (36%) ・By Region: North America (51%), Europe (21%), Asia Pacific (18%), Latin America (5%), the Middle East & Africa (4%), and GCC Countries (1%) The key players in the medical radiation detection, monitoring, and safety market are Mirion Technologies, Inc. (US), Fortive (US), Thermo Fisher Scientific Inc. (US), IBA Worldwide (Belgium), AMETEK Inc. (US), Fuji Electric Co., Ltd. (Japan), Ludlum Measurements, Inc. (US), AliMed (US), UAB Polimaster Europe (Belarus), and Arktis Radiation Detectors Ltd. (Switzerland). Research Coverage: This research report categorizes the medical radiation detection, monitoring, and safety market by product (personal dosimeters, area process monitors, environment radiation monitors, surface contamination monitors, radioactive material monitors, and other radiation detection & monitoring products), detector (gas-filled detectors, scintillators, and solid-state detectors), safety product (full-body protection products, face protection products, hand safety products, and other medical radiation safety products), end user (hospitals and non-hospitals), and region (North America, Europe, Asia Pacific, Latin America, the Middle East & Africa, and GCC Countries). The scope of the report covers detailed information regarding the major factors, such as drivers, restraints, opportunities, and challenges influencing the growth of the medical radiation detection, monitoring, and safety market. A detailed analysis of the key industry players has been conducted to provide insights into their business overviews, solutions, and key strategies such as partnerships, collaborations, expansions, agreements, new product launches, and recent developments in the medical radiation detection, monitoring & safety market. This report covers a competitive analysis of upcoming startups in the medical radiation detection, monitoring, and safety market ecosystem. Reasons to buy this report: The report will help market leaders and new entrants by providing the closest approximations of revenue numbers for the overall medical radiation detection, monitoring, and safety market and its subsegments. It will help stakeholders understand the competitive landscape and gain deeper insights to better position their businesses and plan suitable go-to-market strategies. The report also helps stakeholders understand the market pulse and provides information on key drivers, restraints, opportunities, and challenges. The report provides insights into the following pointers: ・Analysis of key drivers (growing adoption of diagnostic imaging procedures, booming cancer cases worldwide, increasing safety awareness in radiation-prone environments, rise in number of surgeries, surge in positron emission tomography and computed tomography scans, and favorable government initiatives), challenges (high installation and maintenance costs and high cost of lead for manufacturing radiation safety products), opportunities (expanding healthcare infrastructure in emerging economies), and restraints (high cost of devices and lack of skilled professionals). ・Product Development/Innovation: Detailed insights on upcoming technologies, research & development activities, and product launches in the medical radiation detection, monitoring, and safety market. ・Market Development: Comprehensive information about lucrative markets; the report analyzes the medical radiation detection, monitoring, and safety market across varied regions. ・Market Diversification: Exhaustive information about new products, untapped geographies, recent developments, and investments in the medical radiation detection, monitoring, and safety market. Competitive Assessment: In-depth assessment of market shares, growth strategies, and product offerings of leading players like Mirion Technologies, Inc. (US), Fortive (US), Thermo Fisher Scientific Inc. (US), IBA Worldwide (Belgium), among others, in the medical radiation detection, monitoring, and safety market. Table of Contents1 INTRODUCTION 381.1 STUDY OBJECTIVES 38 1.2 MARKET DEFINITION 38 1.3 STUDY SCOPE 39 1.3.1 MARKETS COVERED AND REGIONAL SCOPE 39 1.3.2 INCLUSIONS AND EXCLUSIONS 40 1.3.3 YEARS CONSIDERED 40 1.3.4 CURRENCY CONSIDERED 41 1.4 STAKEHOLDERS 41 1.5 SUMMARY OF CHANGES 41 2 EXECUTIVE SUMMARY 43 2.1 KEY INSIGHTS AND MARKET HIGHLIGHTS 43 2.2 KEY MARKET PARTICIPANTS: SHARE INSIGHTS AND STRATEGIC DEVELOPMENTS 44 2.3 DISRUPTIVE TRENDS SHAPING MARKET 45 2.4 HIGH-GROWTH SEGMENTS AND EMERGING FRONTIERS 46 2.5 SNAPSHOT: GLOBAL MARKET SIZE, GROWTH RATE, AND FORECAST 47 3 PREMIUM INSIGHTS 48 3.1 MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY MARKET OVERVIEW 48 3.2 MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY MARKET, BY PRODUCT, 2026 VS. 2031 49 3.3 MEDICAL RADIATION DETECTORS MARKET, BY TYPE, 49 3.4 2026 VS. 2031 49 3.5 MEDICAL RADIATION SAFETY PRODUCTS MARKET, BY TYPE, 2026 VS. 2031 50 3.6 MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY MARKET, BY END USER, 2026 VS. 2031 50 3.7 MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY MARKET: GEOGRAPHIC GROWTH OPPORTUNITIES 51 4 MARKET OVERVIEW 52 4.1 INTRODUCTION 52 4.2 MARKET DYNAMICS 52 4.2.1 DRIVERS 53 4.2.1.1 Growing adoption of diagnostic imaging procedures 53 4.2.1.2 Increasing incidence of cancer 53 4.2.1.3 Increasing safety awareness in radiation-prone environments 55 4.2.1.4 Rising number of surgeries 56 4.2.1.5 Surge in PET and CT scans 57 4.2.1.6 Favorable government initiatives 58 4.2.2 RESTRAINTS 59 4.2.2.1 High cost of devices 59 4.2.2.2 Lack of skilled professionals 60 4.2.3 OPPORTUNITIES 60 4.2.3.1 Expanding healthcare infrastructure in emerging economies 60 4.2.3.2 Expansion of radiotheranostics and nuclear medicine 61 4.2.4 CHALLENGES 62 4.2.4.1 High installation and maintenance costs 62 4.2.4.2 Volatility in raw material prices 62 4.3 UNMET NEEDS AND WHITE SPACES 63 4.3.1 UNMET NEEDS IN MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY MARKET 63 4.3.2 WHITE SPACE OPPORTUNITIES 63 4.4 INTERCONNECTED MARKETS AND CROSS-SECTOR OPPORTUNITIES 65 4.4.1 INTERCONNECTED MARKETS 65 4.4.2 CROSS-SECTOR OPPORTUNITIES 66 4.5 STRATEGIC MOVES BY TIER 1/2/3 PLAYERS 66 4.5.1 KEY MOVES AND STRATEGIC FOCUS 67 5 INDUSTRY TRENDS 68 5.1 PORTER’S FIVE FORCES ANALYSIS 68 5.1.1 THREAT OF NEW ENTRANTS 69 5.1.2 THREAT OF SUBSTITUTES 69 5.1.3 BARGAINING POWER OF SUPPLIERS 69 5.1.4 BARGAINING POWER OF BUYERS 69 5.1.5 INTENSITY OF COMPETITIVE RIVALRY 69 5.2 MACROECONOMIC INDICATORS 70 5.2.1 INTRODUCTION 70 5.2.2 GDP TRENDS AND FORECAST 70 5.3 SUPPLY CHAIN ANALYSIS 72 5.4 VALUE CHAIN ANALYSIS 73 5.5 ECOSYSTEM ANALYSIS 75 5.6 PRICING ANALYSIS 76 5.6.1 AVERAGE SELLING PRICE OF MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY, BY REGION, 2023–2025 77 5.6.2 AVERAGE SELLING PRICE OF MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY PRODUCTS, BY KEY PLAYER, 2023–2025 78 5.7 TRADE ANALYSIS 78 5.7.1 IMPORT SCENARIO (HS CODE 902221) 79 5.7.2 EXPORT SCENARIO (HS CODE 902221) 79 5.8 KEY CONFERENCES & EVENTS, 2026–2027 80 5.9 TRENDS/DISRUPTIONS IMPACTING CUSTOMERS’ BUSINESSES 81 5.10 INVESTMENT & FUNDING SCENARIO 81 5.11 IMPACT OF US TARIFFS—MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY MARKET 82 5.11.1 INTRODUCTION 82 5.11.2 KEY TARIFF RATES 83 5.11.3 PRICE IMPACT ANALYSIS 83 5.11.4 IMPACT ON COUNTRIES/REGIONS 84 5.11.4.1 North America 84 5.11.4.2 Europe 84 5.11.4.3 Asia Pacific 85 5.11.5 IMPACT ON END-USE INDUSTRIES 85 5.11.5.1 Hospitals and diagnostic imaging centers 85 5.11.5.2 Radiotherapy and cancer centers 85 5.11.5.3 Nuclear medicine and research institutions 85 6 TECHNOLOGICAL ADVANCEMENTS, AI-DRIVEN IMPACT, PATENTS, INNOVATIONS, AND FUTURE APPLICATIONS 86 6.1 KEY EMERGING TECHNOLOGIES 86 6.1.1 RADIATION SAFETY PRODUCTS 86 6.2 COMPLEMENTARY TECHNOLOGIES 86 6.2.1 RADIATION DETECTION AND MONITORING PRODUCTS 86 6.3 TECHNOLOGY/PRODUCT ROADMAP 86 6.4 PATENT ANALYSIS 87 6.4.1 LIST OF KEY PATENTS 88 6.5 FUTURE APPLICATIONS 89 6.6 IMPACT OF AI/GENERATIVE AI ON MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY MARKET 90 6.6.1 INTRODUCTION 90 6.6.2 TOP USE CASES AND MARKET POTENTIAL 91 6.6.3 KEY COMPANIES IMPLEMENTING AI 91 6.6.4 FUTURE OF AI 92 7 REGULATORY LANDSCAPE AND SUSTAINABILITY 93 7.1 REGIONAL REGULATIONS AND COMPLIANCE 93 7.1.1 REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS 93 7.2 SUSTAINABILITY INITIATIVES 95 7.2.1 ENVIRONMENTAL IMPACT AND ECO-FRIENDLY INITIATIVES 95 7.2.1.1 Eco-friendly Initiatives 95 7.3 SUSTAINABILITY IMPACT AND REGULATORY POLICY INITIATIVES 96 8 CUSTOMER LANDSCAPE & BUYER BEHAVIOR 97 8.1 DECISION-MAKING PROCESS 97 8.2 BUYER STAKEHOLDERS AND BUYING EVALUATION CRITERIA 97 8.2.1 KEY STAKEHOLDERS IN BUYING PROCESS 97 8.2.2 BUYING CRITERIA 98 8.3 ADOPTION BARRIERS & INTERNAL CHALLENGES 98 8.4 UNMET NEEDS IN VARIOUS END-USE INDUSTRIES 100 8.5 MARKET PROFITABILITY 100 8.5.1 REVENUE POTENTIAL 101 8.5.2 COST DYNAMICS 101 8.5.3 MARGIN OPPORTUNITIES IN KEY APPLICATIONS 101 9 MEDICAL RADIATION MONITORING PRODUCTS MARKET, BY TYPE 102 9.1 INTRODUCTION 103 9.2 PERSONAL DOSIMETERS 103 9.2.1 PASSIVE DOSIMETERS 106 9.2.1.1 Optically stimulated luminescence dosimeters 109 9.2.1.1.1 Growing use of laboratories and hospitals to drive market 109 9.2.1.2 Thermoluminescent dosimeters 111 9.2.1.2.1 Increasing awareness about occupational hazards of radiation exposure to aid growth 111 9.2.1.3 Film badges 113 9.2.1.3.1 Portability and accuracy factors to support market growth 113 9.2.2 ACTIVE DOSIMETERS 115 9.2.2.1 Self-reading pocket dosimeters 117 9.2.2.1.1 Need for field-readable devices to augment growth 117 9.2.2.2 Pocket electroscopes 119 9.2.2.2.1 Low cost and high sensitivity to facilitate market growth 119 9.3 AREA PROCESS MONITORS 122 9.3.1 APPLICATIONS IN NUCLEAR REACTORS, ACCELERATORS, HOT CELLS, AND IRRADIATORS TO PROMOTE GROWTH 122 9.4 ENVIRONMENTAL RADIATION MONITORS 124 9.4.1 RISING USE BY GOVERNMENT AGENCIES WORLDWIDE TO FUEL MARKET 124 9.5 SURFACE CONTAMINATION MONITORS 126 9.5.1 GROWING DEVELOPMENT OF USER-FRIENDLY AND PORTABLE RADIATION CONTAMINATION MONITORS TO AID MARKET GROWTH 126 9.6 RADIOACTIVE MATERIAL MONITORS 129 9.6.1 GROWING USE IN MEDICAL IMAGING TO DRIVE MARKET 129 9.7 OTHER MEDICAL RADIATION MONITORING PRODUCTS 131 10 MEDICAL RADIATION DETECTORS MARKET, BY TYPE 133 10.1 INTRODUCTION 134 10.2 GAS-FILLED DETECTORS 134 10.2.1 GEIGER-MÜLLER COUNTERS 136 10.2.1.1 Ability to detect all types of medical radiation to expedite growth 136 10.2.2 IONIZATION CHAMBERS 138 10.2.2.1 Growing development of portable handheld ionization detectors to drive market 138 10.2.3 PROPORTIONAL COUNTERS 140 10.2.3.1 Improved sensitivity and uniform response to augment growth 140 10.3 SCINTILLATORS 142 10.3.1 INORGANIC SCINTILLATORS 145 10.3.1.1 Rising applications in diagnostic centers and radiology departments to favor market growth 145 10.3.2 ORGANIC SCINTILLATORS 147 10.3.2.1 Growing focus on radiation safety to drive market 147 10.4 SOLID-STATE DETECTORS 149 10.4.1 SEMICONDUCTOR DETECTORS 151 10.4.1.1 Increasing research activities to contribute to market growth 151 10.4.2 DIAMOND DETECTORS 153 10.4.2.1 Growing advancements in high-quality chemical vapor deposition detectors to promote growth 153 11 MEDICAL RADIATION SAFETY PRODUCTS MARKET, BY TYPE 156 11.1 INTRODUCTION 157 11.2 FULL-BODY PROTECTION PRODUCTS 157 11.2.1 APRONS 160 11.2.1.1 Growing volume of medical imaging procedures to boost market 160 11.2.2 BARRIERS & SHIELDS 163 11.2.2.1 Increasing inclination toward decreasing health hazards to expedite growth 163 11.3 FACE PROTECTION PRODUCTS 165 11.3.1 EYEWEAR 168 11.3.1.1 Strict guidelines for radiation protection to aid market growth 168 11.3.2 FACE MASKS 170 11.3.2.1 Ability to restrict unnecessary exposure to radiation to fuel market 170 11.4 HAND SAFETY PRODUCTS 172 11.4.1 GLOVES 174 11.4.1.1 Rising applications in fluoroscopy and radiography to support market growth 174 11.4.2 ATTENUATING SLEEVES 176 11.4.2.1 Growing use of personal protective equipment to drive market 176 11.5 OTHER MEDICAL RADIATION SAFETY PRODUCTS 179 12 MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY MARKET, BY END USER 181 12.1 INTRODUCTION 182 12.2 HOSPITALS 182 12.2.1 RADIATION THERAPY 185 12.2.1.1 Rising cancer burden and increasing investment in next-gen technologies to drive market 185 12.2.2 RADIOLOGY 187 12.2.2.1 Increasing number of hospitals in emerging economies to support market growth 187 12.2.3 DENTISTRY 189 12.2.3.1 Growing adoption of digital dental imaging systems to fuel market 189 12.2.4 NUCLEAR MEDICINE 191 12.2.4.1 Surge in demand for radioisotopes to encourage growth 191 12.2.5 EMERGENCY CARE 193 12.2.5.1 Growing use of technologically advanced equipment in hospitals to propel market 193 12.2.5.2 Other hospital specialties 195 12.3 NON-HOSPITAL END USERS 198 12.3.1 IMAGING CENTERS 200 12.3.1.1 Increasing establishment of advanced imaging centers to facilitate growth 200 12.3.2 RADIATION THERAPY & CANCER CENTERS 202 12.3.2.1 Growing trend of outpatient oncology centers and AI integration to boost market 202 12.3.3 DENTAL CLINICS 204 12.3.3.1 Rising demand for advanced imaging equipment to accelerate growth 204 12.3.4 ORTHOPEDIC FACILITIES 206 12.3.4.1 Growing demand for state-of-the-art medical imaging and radiation technologies to boost market 206 12.3.5 OTHER NON-HOSPITAL END USERS 208 13 MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY MARKET, BY REGION 211 13.1 INTRODUCTION 212 13.2 NORTH AMERICA 212 13.2.1 US 221 13.2.1.1 Rising healthcare expenditure and advanced medical imaging adoption to sustain market growth 221 13.2.2 CANADA 227 13.2.2.1 Increasing adoption of advanced diagnostic imaging and radiotherapy services to support market growth 227 13.3 EUROPE 234 13.3.1 GERMANY 242 13.3.1.1 Strong diagnostic imaging infrastructure and rising cancer burden to drive market growth 242 13.3.2 UK 249 13.3.2.1 Expansion of diagnostic imaging capacity and cancer services to drive market growth 249 13.3.3 FRANCE 256 13.3.3.1 Growing investments in diagnostic imaging, AI, and precision medicine to propel market growth 256 13.3.4 ITALY 263 13.3.4.1 Strong healthcare infrastructure and government investments supporting market growth 263 13.3.5 SPAIN 270 13.3.5.1 Strong public healthcare system and expanding diagnostic imaging capacity to drive market growth 270 13.3.6 REST OF EUROPE 276 13.4 ASIA PACIFIC 283 13.4.1 CHINA 291 13.4.1.1 Expanding healthcare infrastructure and increasing cancer burden to drive market growth 291 13.4.2 JAPAN 298 13.4.2.1 Extensive diagnostic imaging infrastructure and stringent radiation safety regulations to drive market growth 298 13.4.3 INDIA 304 13.4.3.1 Expanding healthcare infrastructure and rising cancer burden to drive market growth 304 13.4.4 AUSTRALIA 311 13.4.4.1 Rising diagnostic imaging volumes and strong radiation safety framework to support market growth 311 13.4.5 REST OF ASIA PACIFIC 317 13.5 LATIN AMERICA 324 13.5.1 RISING CANCER BURDEN AND EXPANDING DIAGNOSTIC IMAGING INFRASTRUCTURE TO PROPEL MARKET GROWTH 324 13.6 MIDDLE EAST & AFRICA 331 13.6.1 RISING INVESTMENTS IN CANCER CARE AND DIAGNOSTIC IMAGING INFRASTRUCTURE TO ENCOURAGE MARKET GROWTH 331 14 MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY: VOLUME ANALYSIS 339 14.1 INTRODUCTION 339 14.2 CANADA: TOTAL NUMBER OF CT EXAMS PERFORMED (IN MILLION) 339 15 COMPETITIVE LANDSCAPE 340 15.1 INTRODUCTION 340 15.2 KEY PLAYER STRATEGIES/RIGHT TO WIN 340 15.2.1 OVERVIEW OF STRATEGIES DEPLOYED BY PLAYERS IN MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY MARKET 340 15.3 REVENUE ANALYSIS, 2023–2025 342 15.4 MARKET SHARE ANALYSIS, 2025 342 15.5 COMPANY EVALUATION MATRIX: KEY PLAYERS, 2025 344 15.5.1 STARS 344 15.5.2 EMERGING LEADERS 344 15.5.3 PERVASIVE PLAYERS 344 15.5.4 PARTICIPANTS 344 15.5.5 COMPANY FOOTPRINT: KEY PLAYERS, 2025 346 15.5.5.1 Company footprint 346 15.5.5.2 Region footprint 347 15.5.5.3 Product footprint 348 15.5.5.4 End-user footprint 348 15.6 COMPANY EVALUATION MATRIX: STARTUPS/SMES, 2025 349 15.6.1 PROGRESSIVE COMPANIES 349 15.6.2 RESPONSIVE COMPANIES 349 15.6.3 DYNAMIC COMPANIES 349 15.6.4 STARTING BLOCKS 349 15.6.5 COMPANY EVALUATION MATRIX: STARTUPS/SMES, 2025 351 15.6.5.1 Detailed list of key startups/SMEs 351 15.6.5.2 Competitive benchmarking of startups/SMEs (1/2) 351 15.7 COMPANY VALUATION & FINANCIAL METRICS 352 15.7.1 FINANCIAL METRICS 352 15.7.2 COMPANY VALUATION 353 15.8 BRAND/PRODUCT COMPARISON 353 15.9 COMPETITIVE SCENARIO 354 15.9.1 PRODUCT LAUNCHES & APPROVALS 354 15.9.2 DEALS 354 16 COMPANY PROFILES 355 16.1 KEY PLAYERS 355 16.1.1 MIRION TECHNOLOGIES, INC. 355 16.1.1.1 Business overview 355 16.1.1.2 Products & services offered 356 16.1.1.3 Recent developments 358 16.1.1.3.1 Product launches & approvals 358 16.1.1.3.2 Deals 358 16.1.1.4 MnM View 358 16.1.1.4.1 Key strengths 358 16.1.1.4.2 Strategic choices 359 16.1.1.4.3 Weaknesses and competitive threats 359 16.1.2 THERMO FISHER SCIENTIFIC 360 16.1.2.1 Business overview 360 16.1.2.2 Products offered 361 16.1.2.3 Recent developments 362 16.1.2.3.1 Product launches & approvals 362 16.1.2.3.2 Deals 363 16.1.2.4 MnM view 363 16.1.2.4.1 Key strengths 363 16.1.2.4.2 Strategic choices 363 16.1.2.4.3 Weaknesses & competitive threats 363 16.1.3 FORTIVE 364 16.1.3.1 Business overview 364 16.1.3.2 Products offered 365 16.1.3.3 MnM view 366 16.1.3.3.1 Key strengths 366 16.1.3.3.2 Strategic choices 366 16.1.3.3.3 Weaknesses and competitive threats 366 16.1.4 IBA WORLDWIDE 367 16.1.4.1 Business overview 367 16.1.4.2 Products & services offered 368 16.1.4.3 Recent developments 369 16.1.4.3.1 Product launches & approvals 369 16.1.4.3.2 Deals 370 16.1.4.4 MnM View 370 16.1.4.4.1 Key strengths 370 16.1.4.4.2 Strategic choices 370 16.1.4.4.3 Weaknesses and competitive threats 370 16.1.5 AMETEK INC. 371 16.1.5.1 Business overview 371 16.1.5.2 Products & services offered 372 16.1.5.3 MnM view 373 16.1.5.3.1 Key strengths 373 16.1.5.3.2 Strategic choices 373 16.1.5.3.3 Weaknesses & competitive threats 373 16.1.6 FUJI ELECTRIC CO., LTD. 374 16.1.6.1 Business overview 374 16.1.6.2 Products & services offered 375 16.1.7 LUDLUM MEASUREMENTS, INC. 377 16.1.7.1 Business overview 377 16.1.7.2 Products offered 377 16.1.8 ALIMED 379 16.1.8.1 Business overview 379 16.1.8.2 Products & services offered 379 16.1.8.3 Recent developments 380 16.1.8.3.1 Product launches & approvals 380 16.1.9 UAB POLIMASTER EUROPE 381 16.1.9.1 Business overview 381 16.1.9.2 Products offered 381 16.1.10 PTW FREIBURG GMBH 383 16.1.10.1 Business overview 383 16.1.10.2 Products offered 383 16.1.11 INFAB LLC 385 16.1.11.1 Business overview 385 16.1.11.2 Products offered 385 16.1.11.3 Recent developments 386 16.1.11.3.1 Product launches & approvals 386 16.1.12 AMRAY GROUP 387 16.1.12.1 Business overview 387 16.1.12.2 Products offered 387 16.2 OTHER PLAYERS 389 16.2.1 RADIATION DETECTION COMPANY 389 16.2.2 ARROW-TECH, INC. 390 16.2.3 CENTRONIC 391 16.2.4 S.E. INTERNATIONAL, INC. 392 16.2.5 ATOMTEX 393 16.2.6 BERTIN TECHNOLOGIES 394 16.2.7 ALPHA SPECTRA, INC. 395 16.2.8 TRIVITRON HEALTHCARE 396 16.2.9 MICRON SEMICONDUCTOR LTD. 397 16.2.10 BURLINGTON MEDICAL 398 16.2.11 NUCLEONIX SYSTEMS 399 16.2.12 RADCOMM SYSTEMS 400 16.2.13 STANDARD IMAGING, INC. 401 17 RESEARCH METHODOLOGY 402 17.1 RESEARCH DATA 402 17.2 SECONDARY DATA 403 17.2.1 LIST OF SECONDARY SOURCES 403 17.2.2 KEY DATA FROM SECONDARY SOURCES 403 17.3 PRIMARY DATA 404 17.3.1 LIST OF PRIMARY SOURCES 404 17.3.2 KEY DATA FROM PRIMARY SOURCES 405 17.3.3 KEY INDUSTRY INSIGHTS 405 17.3.4 BREAKDOWN OF PRIMARY INTERVIEWS 406 17.4 MARKET SIZE ESTIMATION 406 17.4.1 TOTAL MARKET SIZE: MEDICAL RADIATION DETECTION, MONITORING, AND SAFETY MARKET 407 17.4.2 BOTTOM-UP APPROACH 407 17.4.2.1 Approach 1: Revenue estimation of key players 407 17.4.2.2 Approach 2: Study of annual reports and investor presentations 407 17.4.2.3 Approach 3: Primary interviews 408 17.4.2.4 Growth forecast 408 17.4.2.5 CAGR projections 408 17.4.3 TOP-DOWN APPROACH 409 17.5 DATA TRIANGULATION 410 17.6 RESEARCH ASSUMPTIONS 411 17.6.1 STUDY-RELATED ASSUMPTIONS 411 17.6.2 PARAMETRIC ASSUMPTIONS 412 17.6.3 GROWTH RATE ASSUMPTIONS 412 17.7 RESEARCH LIMITATIONS 413 17.8 RISK ASSESSMENT 413 18 APPENDIX 414 18.1 DISCUSSION GUIDE 414 18.2 KNOWLEDGESTORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL 419 18.3 CUSTOMIZATION OPTIONS 420 18.4 RELATED REPORTS 421 18.5 AUTHOR DETAILS 422
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